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首页> 外文期刊>Coral Reefs >Bathymetry, water optical properties, and benthic classification of coral reefs using hyperspectral remote sensing imagery
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Bathymetry, water optical properties, and benthic classification of coral reefs using hyperspectral remote sensing imagery

机译:使用高光谱遥感影像进行珊瑚礁的测深,水光学特性和底栖分类

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摘要

The complexity and heterogeneity of shallow coastal waters over small spatial scales provides a challenging environment for mapping and monitoring benthic habitats using remote sensing imagery. Additionally, changes in coral reef community structure are occurring on unprecedented temporal scales that require large-scale synoptic coverage and monitoring of coral reefs. A variety of sensors and analyses have been employed for monitoring coral reefs: this study applied a spectrum-matching and look-up-table methodology to the analysis of hyperspectral imagery of a shallow coral reef in the Bahamas. In unconstrained retrievals the retrieved bathymetry was on average within 5% of that measured acoustically, and 92% of pixels had retrieved depths within 25% of the acoustic depth. Retrieved absorption coefficients had less than 20% errors observed at blue wavelengths. The reef scale benthic classification derived by analysis of the imagery was consistent with the percent cover of specific coral reef habitat classes obtained by conventional line transects over the reef, and the inversions were robust as the results were similar when the benthic classification retrieval was constrained by measurements of bathymetry or water column optical properties. These results support the use of calibrated hyperspectral imagery for the rapid determination of bathymetry, water optical properties, and the classification of important habitat classes common to coral reefs.
机译:浅海沿海水域在小空间尺度上的复杂性和异质性为使用遥感影像绘制和监测底栖生境提供了一个充满挑战的环境。另外,珊瑚礁群落结构的变化发生在空前的时间尺度上,这需要大规模的天气覆盖和监测珊瑚礁。各种传感器和分析方法已用于监测珊瑚礁:这项研究将光谱匹配和查找表方法应用于巴哈马浅珊瑚礁的高光谱图像分析。在无限制的检索中,检索到的测深平均在声学测得的距离的5%以内,而92%的像素的检索深度在声学深度的25%以内。检索的吸收系数在蓝色波长下观察到的误差小于20%。通过图像分析得出的珊瑚礁底栖生物分类与通过珊瑚礁上常规线样线获得的特定珊瑚礁栖息地类别的覆盖率百分比一致,并且当底栖生物分类检索受到限制时,结果相似,因此反演是可靠的测深或水柱光学特性的测量。这些结果支持使用校准的高光谱图像快速确定测深,水光学特性以及对珊瑚礁常见的重要生境类别进行分类。

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